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首页> 外文期刊>Geophysical Prospecting >Estimation of geological dip and curvature from time-migrated zero-offset reflections in heterogeneous anisotropic media
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Estimation of geological dip and curvature from time-migrated zero-offset reflections in heterogeneous anisotropic media

机译:非均质各向异性介质中时间偏移零偏移反射的地质倾角和曲率估算

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摘要

Starting from a given time-migrated zero-offset data volume and time-migration velocity, recent literature has shown that it is possible to simultaneously trace image rays in depth and reconstruct the depth-velocity model along them. This, in turn, allows image-ray migration, namely to map time-migrated reflections into depth by tracing the image ray until half of the reflection time is consumed. As known since the 1980s, image-ray migration can be made more complete if, besides reflection time, also estimates of its first and second derivatives with respect to the time-migration datum coordinates are available. Such information provides, in addition to the location and dip of the reflectors in depth, also an estimation of their curvature. The expressions explicitly relate geological dip and curvature to first and second derivatives of reflection time with respect to time-migration datum coordinates. Such quantitative relationships can provide useful constraints for improved construction of reflectors at depth in the presence of uncertainty. Furthermore, the results of image-ray migration can be used to verify and improve time-migration algorithms and can therefore be considered complementary to those of normal-ray migration. So far, image-ray migration algorithms have been restricted to layered models with isotropic smooth velocities within the layers. Using the methodology of surface-to-surface paraxial matrices, we obtain a natural extension to smooth or layered anisotropic media.
机译:从给定的时间迁移零偏移数据量和时间迁移速度开始,最近的文献表明,可以同时跟踪深度的图像射线并沿着它们重建深度-速度模型。继而,这允许图像射线迁移,即通过跟踪图像射线直到消耗了一半的反射时间,将时间迁移的反射映射到深度。如自1980年代以来所知,如果除了反射时间之外,还可以获得关于时间迁移基准坐标的一阶和二阶导数的估计,可以使图像射线迁移更加完整。除了反射器在深度上的位置和倾角之外,这种信息还提供了其曲率的估计。这些表达式明确地将地质倾角和曲率与反射时间相对于时间偏移基准坐标的一阶和二阶导数相关。这种定量关系可以提供有用的约束条件,以在存在不确定性的情况下改进反射器的深度构造。此外,图像射线迁移的结果可用于验证和改进时间迁移算法,因此可以被认为是对常规射线迁移的补充。到目前为止,图像射线迁移算法已限于层内各向同性平滑速度的分层模型。使用表面到表面近轴矩阵的方法,我们获得了对光滑或分层各向异性介质的自然扩展。

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